Lemos Agostinho, Lemaire Christian, Luxen André
GIGA Cyclotron Research Centre In Vivo Imaging University of Liège Allée du 6 Août 8, 4000 Liège Belgium.
Adv Synth Catal. 2019 Apr 1;361(7):1500-1537. doi: 10.1002/adsc.201801121. Epub 2019 Jan 17.
The selective incorporation of fluorinated motifs, in particular CFFG (FG=a functional group) and CFH groups, into organic compounds has attrracted increasing attention since organofluorine molecules are of the utmost importance in the areas of nuclear imaging, pharmaceutical, agrochemical, and material sciences. A variety of synthetic approaches has been employed in late-stage difluoroalkylation reactions. Visible light photoredox catalysis for the production of CFFG and CFH radicals has provided a more sustainable alternative to other conventional radical-triggered reactions from the viewpoint of safety, cost, availability, and "green" chemistry. A wide range of difluoroalkylating reagents has been successfully implemented in these organic transformations in the presence of transition metal complexes or organic photocatalysts. In most cases, upon excitation visible light irradiation with fluorescent light bulbs or blue light-emitting diode (LED) lamps, these photocatalysts can act as both reductive and oxidative quenchers, thus enabling the application of electron-donor or electron-acceptor difluoroalkylating reagents for the generation of CFFG and CFH radicals. Subsequent radical addition to substrates and additional organic transformations afford the corresponding difluoroalkylated derivatives. The present review describes the distinct strategies for the transition metal- and organic-photocatalyzed difluoroalkylation of a broad range of organic substrates by visible light irradiation reported in the literature since 2014.
由于有机氟分子在核成像、制药、农用化学品和材料科学领域极为重要,将氟化基团,特别是CFFG(FG = 官能团)和CFH基团选择性引入有机化合物中已引起越来越多的关注。在后期二氟烷基化反应中已采用了多种合成方法。从安全性、成本、可用性和“绿色”化学的角度来看,用于生成CFFG和CFH自由基的可见光光氧化还原催化为其他传统自由基引发的反应提供了更可持续的替代方法。在过渡金属配合物或有机光催化剂存在下,多种二氟烷基化试剂已成功应用于这些有机转化反应中。在大多数情况下,在用荧光灯泡或蓝色发光二极管(LED)灯进行可见光照射激发后,这些光催化剂可同时作为还原猝灭剂和氧化猝灭剂,从而能够应用供电子或受电子二氟烷基化试剂来生成CFFG和CFH自由基。随后自由基加成到底物上并进行额外的有机转化反应,得到相应的二氟烷基化衍生物。本综述描述了自2014年以来文献报道的通过可见光照射对多种有机底物进行过渡金属和有机光催化二氟烷基化的不同策略。